• 제목/요약/키워드: interlayer coupling

검색결과 68건 처리시간 0.025초

Nb 버퍼층과 거대자기저항-스핀밸브 하이브리드 다층박막의 자기저항 특성 (Magnetoresistance Properties of Hybrid GMR-SV Films with Nb Buffer Layers)

  • 양우일;최종구;이상석
    • 한국자기학회지
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    • 제27권3호
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    • pp.82-86
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    • 2017
  • Corning glass 위에 형태별로 서로 다른 버퍼층(Ta, Nb, $Nb_3Al$)을 삽입하여 IrMn을 기반으로 한 거대자기저항-스핀밸브(GMR-SV) 다층박막을 이온빔 증착 시스템과 DC 마그네트론 스퍼터링 시스템을 이용하여 제조하였다. 버퍼층이 다른 3가지 형태의 GMR-SV 다층박막 구조에 대해 열처리 전에 측정한 major 및 minor 자기저항(MR) 곡선에서 나타난 자기저항 특성은 형태별로 서로 다른 결과를 보여주었다. 3가지 형태의 GMR-SV 다층박막을 진공 상태에서 $250^{\circ}C$로 열처리 한 결과, 고정층의 교환결합세기를 제외한 모든 자기저항 특성이 대체적으로 향상되었다.

Landau Level Spectra in a Twisted Bilayer Graphene

  • 이인호;황찬용
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.367-367
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    • 2012
  • We investigate Landau level spectra of twisted bilayer graphene under a perpendicular magnetic field, showing that the layers provide rich electronic structure depending on misoriented angle. New types of excitations with Landau level sequences due to the reflection of interlayer coupling level are matter of interest in the present work. We calculate the electronic structure of bilayer systems with a relative small angle rotation of the two graphene layers. Calculated Landau level spectra for twisted bilayer graphene using a continuum formulation are in good agreement with existing experimental and theoretical studies. Twist angle dependent numerical simulations provide significant insights for the nature of the Landau level spectra in bilayer graphene, combining signals from both massive and massless Dirac fermions. We finally discuss the influence of the graphene layers in the experimental sample that related to the magneto-transport measurements including quantum Hall conductance.

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Coupled effects of electrical polarization-strain gradient on vibration behavior of double-layered flexoelectric nanoplates

  • Barati, Mohammad Reza
    • Smart Structures and Systems
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    • 제20권5호
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    • pp.573-581
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    • 2017
  • A vibrating double-layered nanoscale piezoelectric plate is developed accounting for the flexoelectricity and surface effects. The flexoelectricity is due to the coupling between electrical polarization and strain gradient. Applying Hamilton's principle, the governing equations and related boundary conditions are derived. Assuming suitable approximate functions, the governing equations are numerically solved for simply-supported and clamped boundary conditions. Obtained results indicate that both the flexoelectricity and surface effects possess notable impact on the vibration frequencies of the system. Only flexoelectricity yields a considerable difference between the present model and previous investigations on conventional piezoelectric nanoplates. Generally, a parametric study has been performed to examine the effects of surface elasticity, flexoelectricity, applied electric voltage, interlayer stiffness, geometrical parameters and boundary conditions on vibration frequencies of piezoelectric nanoplates.

Bistable Domain Wall Configuration in a Nanoscale Magnetic Disc: A Model for an Inhomogeneous Ferromagnetic Film

  • Venus D.
    • Journal of Magnetics
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    • 제10권3호
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    • pp.113-117
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    • 2005
  • Some polycrystalline ferromagnetic mms are composed of continuously connected nanometer scale islands with random crystallite orientations. The nanometer perturbations of the mm introduce a large number of nearly degenerate local field configurations that are indistiguishable on a macroscopic scale. As a first step, this situation is modelled as a thin ferromagnetic disc coupled by exchange and dipole interactions to a homogeneous ferromagnetic plane, where the disc and plane have different easy axes. The model is solved to find the partial $N\acute{e}el$ domain walls that minimize the magnetic energy. The two solutions give a bistable configuration that, for appropriate geometries, provides an important microsopic ferromagnetic degree of freedom for the mm. These results are used to interpret recent measurements of exchange biased bilayer films.

Exchange Bias Modifications in NiFe/FeMn/NiFe Trilayer by a Nonmagnetic Interlayer

  • Yoon, S.M.;Sankaranarayanan V.K.;Kim, C.O.;Kim, C.G.
    • Journal of Magnetics
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    • 제10권3호
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    • pp.99-102
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    • 2005
  • Modification in exchange bias of a NiFe/FeMn/NiFe trilayer, on introduction of a nonmagnetic Al layer at the top FeMn/NiFe interface, is investigated in multilayers prepared by rf magnetron sputtering. The introduction of Al layer leads to vanishing of bias of the top NiFe layer. But the bias for the bottom NiFe layer increases steadily with increasing Al layer thickness and attains bias (230 Oe) which is greater than that of the trilayer without the Al layer (150 Oe). When the top NiFe layer thickness is varied, exchange bias has highest value at 12 nm thickness for 1 nm thicknes of Al layer. Ion beam etching of the top NiFe layer also leads to an enhancement in bias for the bottom NiFe layer.

$Ni_{25}Mn_{75}-Spin$ Valve 박막 자유층의 열처리 순환수에 따른 자기저항 특성 (Annealing Cycle Dependence of MR Properties for Free Layer in $Ni_{25}Mn_{75}-Spin$ Valve Films)

  • 이낭이;이주현;이가영;김미양;이장로;이상석;황도근
    • 한국자기학회지
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    • 제10권2호
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    • pp.62-66
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    • 2000
  • 비자성사이층 Cu 두께(30 $\AA$, 35 $\AA$, 40 $\AA$)를 달리한 glass(7059)/N $i_{81}$$Fe_{19}$(70 $\AA$)/Co(10 $\AA$)/Cu(t $\AA$)/Co(15 $\AA$)/N $i_{81}$$Fe_{19}$(35 $\AA$)N $i_{25}$M $n_{75}$(250 $\AA$)Ta(50 $\AA$) 스핀밸브박막(spin valve film; SVF) 을 dc 스퍼터링으로 제작하였다 이 시편을 진공 열처리 한 후 자유자성층의 상호결합세기(interlayer coupling field; $H_{inf}$ )와 보자력(coercivity; $H_{sf}$ )에 대한 열처리 순환횟수 및 비자성층 두께 의존성에 관련한 자기저항특성을 조사했다. Cu 두께가 35 $\AA$인 SVF의 경우에 교환결합세기(exchange coupling field; $H_{ex}$)가 620 Oe, 보자력( $H_{c}$)이 280 Oe 및 자기저항(magnetoresistance; MR)비가 2.5%를 보였다. $H_{inf}$$H_{cf}$ 는 모든 SVF가 열처리 순환 횟수에 따라 증가하는 경향을 보이다가 일정한 값으로 안정화되며 Cu 35 $\AA$인 경우는 열처리 순환 횟수 15회 이후에 각각 120 Oe 및 75 Oe를 유지한다. $H_{inf}$$H_{cf}$ 가 열처리 순환횟수 증가에 따라 증가하는 것은 열처리 효과에 의해 Cu층과 Co층의 계면섞임 증대에 의한 유효한 Cu층 두께 감소에 기인한다. Cu가 적정둘레 35 $\AA$ 보다 더 얇아지거나 두꺼워지면 계면섞임에 의한 효과는 각각 더 증대하거나 둔화되는 것으로 분석된다.으로 분석된다..

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Study of the Magnetization Reversal Behavior of exchange-Biased System Using Polarized Neutron Reflectometry

  • Park, Sung-Kyun;Kim, Ki-Yeon;Kim, Ji-Wan;Choi, Hyeok-Cheol;Teichert, A.;You, Chun-Yeol;Shin, Sung-Cheol;Lee, Jeong-Soo;Fitzsimmons, M.R.
    • 한국자기학회:학술대회 개요집
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    • 한국자기학회 2011년도 임시총회 및 하계학술연구발표회
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    • pp.3-3
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    • 2011
  • Since the first discovery of exchange anisotropy on Co/CoO system[1], there have been numerous studies to explore the physical origin of exchange-biased system[2,3]. In this presentation, we report that how the polarized neutron reflectomery can be applied to study the magnetization reversal behavior of the exchange biased system. As an example, the detailed magnetization reversal mechanism of the exchange-biased Py(30 nm)/FeMn (0, 15, 30 nm)/CoFe(30 nm) trilayers was studied and found that the 15 nm antiferromagnetic FeMn layer mediates the magnetization reversal behaviors of both Py and CoFe layers through interlayer exchange bias coupling. We also update the current activities in polarized neutron reflectometer in HANARO.

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Interfacial Properties of Electrodeposited Carbon Fibers Reinforced Epoxy Composites Using Fragmentation Technique and Acoustic Emission

  • Yeong-Min Kim;Joung-Man Park;Ki-Won Kim;Dong-Jin Yoon
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 1999년도 추계학술발표대회 논문집
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    • pp.28-31
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    • 1999
  • Carbon fiber/epoxy composites using electrodeposited monomeric and polymeric coupling agents were compared with the dipping and the untreated cases. Treating conditions such as time, concentration and temperature were optimized. Four-fibers embedded micro-composites were prepared for fragmentation test. Interfacial properties of four-fiber composites with different surface treatments were investigated with simultaneous acoustic emission (AE) monitoring. The microfailure mechanisms occurring from fiber break, matrix and interlayer crackings were examined by AE parameters and an optical microscope. It was found that interfacial shear strength (IFSS) of electrodeposited carbon fibers was much higher than the other cases under dry and wet conditions. Well separated and different-shaped AE groups occurs for the untreated and ED treated case, respectively.

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Effects of iron atom, substrate on two-dimensional C2N crystals

  • Noh, Min Jong;Kim, Yong Hoon
    • EDISON SW 활용 경진대회 논문집
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    • 제5회(2016년)
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    • pp.288-291
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    • 2016
  • Recently, there has been a lot of researches related to two-dimensional (2D) materials due to their new properties and applications emerging upon 2D confinement. A new type of graphene like two-dimensional layer material, nitrogenated holey two-dimensional structure C2N-h2D, that is possession of evenly distributed holes and nitrogen atoms with proper bandgap has been synthesized. Previous calculation studies already have shown that the variance of the orbital interaction, band structure of few-layer C2N-h2D suggests that interlayer coupling does play an important role in its electronic properties. In this point, using first-principles density functional theory calculation, we here explore the effect of porous embedded iron atom and iron substrate on encapsulated few layer C2N-h2D. We show the atomic structures and the corresponding electronic structures of Fe@C2N to elucidate the effect of iron. Finally, this study demonstrates that embedded iron C2N has AA-stacking as most favorable stacked structure in contrast to pure C2N. In addition, iron substrate modifies its encapsulated C2N from semi-metallic states to metallic state.

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